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Photovoltaic Power System With Battery Backup With Grid-Connection and Islanded Operation Capabilities

机译:具有并网和孤岛运行能力的备用电池的光伏电源系统

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This paper presents the analysis, design, and experimentation results of a photovoltaic energy management system with battery backup. The proposed system is capable of both grid-connected and islanded operations. The main advantage of the proposed system is that, in grid-connected mode, the inverter works as a current source in phase with the grid voltage, injecting power to the grid and controlling the dc-link voltage. The dc/dc converter manages the battery charge. In islanded mode, the inverter control is reconfigured to work as a voltage source using droop schemes. The dc/dc converter controls the dc-link voltage to enable the maximum power point tracking reference to be followed. An operation protocol is proposed to ensure the quality of the energy supply and minimize energy loss. A battery bank is connected to the dc link as energy storage for islanded operation mode. The aim of this paper is to show that the proposed system performs correctly, without dangerous transients for the inverter or the loads. Simulation and experimental results on a 3-kW prototype show the feasibility of the proposed control strategy.
机译:本文介绍了带有备用电池的光伏能源管理系统的分析,设计和实验结果。拟议的系统能够同时进行并网和孤岛运行。提出的系统的主要优点是,在并网模式下,逆变器用作与电网电压同相的电流源,向电网注入功率并控制直流母线电压。 dc / dc转换器管理电池电量。在孤岛模式下,逆变器控件使用下降方案重新配置为用作电压源。 dc / dc转换器控制dc-link电压,以遵循最大功率点跟踪参考。提出了操作协议以确保能量供应的质量并最小化能量损失。电池组连接到直流链路,作为孤岛运行模式的能量存储。本文的目的是表明所提出的系统能够正确运行,并且不会对逆变器或负载产生危险的瞬变。在3kW原型机上进行的仿真和实验结果表明了所提出的控制策略的可行性。

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